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1. Lessons learned after three years of SPIDER operation and the first MITICA integrated tests

2. Status of SPIDER beam source after the first 3.5 years of operation

4. Lessons learned after three years of SPIDER operation and the first MITICA integrated tests

5. Corrigendum to “Status of SPIDER beam source after the first 3.5 years of operation” [Fusion Engineering and Design, Volume 192, July 2023, 113831]

6. Facile and Effective Method for the Preparation of Sodium Alginate/TiO2 Bio‐Composite Films for Different Applications.

8. Lessons learned after three years of SPIDER operation and the first MITICA integrated tests

13. How Covid-19 changed the epidemiology of febrile urinary tract infections in children in the emergency department during the first outbreak

17. Corrosion and metal release of Copper and Stainless Steel exposed to Ultrapure Water

19. Characteristics and risk factors for SARS-CoV-2 in children tested in the early phase of the pandemic: a cross-sectional study, Italy, 23 February to 24 May 2020

20. Mechanical properties and tribological behaviour of Mo-N coatings deposited via high power impulse magnetron sputtering on temperature sensitive substrates

24. H2 purification through BaCe0.65Zr0.20Y0.15O3-¿-Ce0.85Gd0.15O2-¿ ceramic dual-phase membrane

25. Ti1−xAlxN coatings by Reactive High Power Impulse Magnetron Sputtering: film/substrate interface effect on residual stress and high temperature oxidation

26. Overview of the RFX-mod fusion science activity

27. Protective hard ceramic coatings deposited via High Power Impulse Magnetron Sputtering

28. TiB2 coatings deposited via High Power Impulse Magnetron Sputtering

29. Wear resistant Ta-Al-N coatings deposited via reactive HiPIMS

31. Overview of the RFX-mod contribution to the international Fusion Science Program

32. Overview of the JET results with the ITER-like wall

33. High power impulse magnetron sputtering Mo-N coatings deposition on temperature sensitive substrates

34. Nitride coatings by reactive ionized magnetron sputtering techniques for harsh environments

35. PVD refractory metal based coatings for tribological applications

36. Characterization of first wall materials in RFX-mod

38. HiPIMS nitride coatings for thermal and tribological applications

39. Overview of the RFX-mod fusion science activity

40. Overview of the RFX-mod fusion science activity

41. Qualification of Tungsten Coating on Carbon Components for the Wall of the RFX-mod Device

42. HiPIMS AlTiN Coatings

43. Thin Films for Extreme Conditions by HiPIMS

46. Overview of the RFX-mod contribution to the international Fusion Science Program

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